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The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities

BACKGROUND: HIV-1 budding is directed primarily by two motifs in Gag p6 designated as late domain-1 and −2 that recruit ESCRT machinery by binding Tsg101 and Alix, respectively, and by poorly characterized determinants in the capsid (CA) domain. Here, we report that a conserved Gag p6 residue, S40,...

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Autores principales: Watanabe, Susan M, Chen, Min-Huei, Khan, Mahfuz, Ehrlich, Lorna, Kemal, Kimdar Sherefa, Weiser, Barbara, Shi, Binshan, Chen, Chaoping, Powell, Michael, Anastos, Kathryn, Burger, Harold, Carter, Carol A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907034/
https://www.ncbi.nlm.nih.gov/pubmed/24257210
http://dx.doi.org/10.1186/1742-4690-10-143
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author Watanabe, Susan M
Chen, Min-Huei
Khan, Mahfuz
Ehrlich, Lorna
Kemal, Kimdar Sherefa
Weiser, Barbara
Shi, Binshan
Chen, Chaoping
Powell, Michael
Anastos, Kathryn
Burger, Harold
Carter, Carol A
author_facet Watanabe, Susan M
Chen, Min-Huei
Khan, Mahfuz
Ehrlich, Lorna
Kemal, Kimdar Sherefa
Weiser, Barbara
Shi, Binshan
Chen, Chaoping
Powell, Michael
Anastos, Kathryn
Burger, Harold
Carter, Carol A
author_sort Watanabe, Susan M
collection PubMed
description BACKGROUND: HIV-1 budding is directed primarily by two motifs in Gag p6 designated as late domain-1 and −2 that recruit ESCRT machinery by binding Tsg101 and Alix, respectively, and by poorly characterized determinants in the capsid (CA) domain. Here, we report that a conserved Gag p6 residue, S40, impacts budding mediated by all of these determinants. RESULTS: Whereas budding normally results in formation of single spherical particles ~100 nm in diameter and containing a characteristic electron-dense conical core, the substitution of Phe for S40, a change that does not alter the amino acids encoded in the overlapping pol reading frame, resulted in defective CA-SP1 cleavage, formation of strings of tethered particles or filopodia-like membrane protrusions containing Gag, and diminished infectious particle formation. The S40F-mediated release defects were exacerbated when the viral-encoded protease (PR) was inactivated or when L domain-1 function was disrupted or when budding was almost completely obliterated by the disruption of both L domain-1 and −2. S40F mutation also resulted in stronger Gag-Alix interaction, as detected by yeast 2-hybrid assay. Reducing Alix binding by mutational disruption of contact residues restored single particle release, implicating the perturbed Gag-Alix interaction in the aberrant budding events. Interestingly, introduction of S40F partially rescued the negative effects on budding of CA NTD mutations EE75,76AA and P99A, which both prevent membrane curvature and therefore block budding at an early stage. CONCLUSIONS: The results indicate that the S40 residue is a novel determinant of HIV-1 egress that is most likely involved in regulation of a critical assembly event required for budding in the Tsg101-, Alix-, Nedd4- and CA N-terminal domain affected pathways.
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spelling pubmed-39070342014-01-31 The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities Watanabe, Susan M Chen, Min-Huei Khan, Mahfuz Ehrlich, Lorna Kemal, Kimdar Sherefa Weiser, Barbara Shi, Binshan Chen, Chaoping Powell, Michael Anastos, Kathryn Burger, Harold Carter, Carol A Retrovirology Research BACKGROUND: HIV-1 budding is directed primarily by two motifs in Gag p6 designated as late domain-1 and −2 that recruit ESCRT machinery by binding Tsg101 and Alix, respectively, and by poorly characterized determinants in the capsid (CA) domain. Here, we report that a conserved Gag p6 residue, S40, impacts budding mediated by all of these determinants. RESULTS: Whereas budding normally results in formation of single spherical particles ~100 nm in diameter and containing a characteristic electron-dense conical core, the substitution of Phe for S40, a change that does not alter the amino acids encoded in the overlapping pol reading frame, resulted in defective CA-SP1 cleavage, formation of strings of tethered particles or filopodia-like membrane protrusions containing Gag, and diminished infectious particle formation. The S40F-mediated release defects were exacerbated when the viral-encoded protease (PR) was inactivated or when L domain-1 function was disrupted or when budding was almost completely obliterated by the disruption of both L domain-1 and −2. S40F mutation also resulted in stronger Gag-Alix interaction, as detected by yeast 2-hybrid assay. Reducing Alix binding by mutational disruption of contact residues restored single particle release, implicating the perturbed Gag-Alix interaction in the aberrant budding events. Interestingly, introduction of S40F partially rescued the negative effects on budding of CA NTD mutations EE75,76AA and P99A, which both prevent membrane curvature and therefore block budding at an early stage. CONCLUSIONS: The results indicate that the S40 residue is a novel determinant of HIV-1 egress that is most likely involved in regulation of a critical assembly event required for budding in the Tsg101-, Alix-, Nedd4- and CA N-terminal domain affected pathways. BioMed Central 2013-11-21 /pmc/articles/PMC3907034/ /pubmed/24257210 http://dx.doi.org/10.1186/1742-4690-10-143 Text en Copyright © 2013 Watanabe et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Watanabe, Susan M
Chen, Min-Huei
Khan, Mahfuz
Ehrlich, Lorna
Kemal, Kimdar Sherefa
Weiser, Barbara
Shi, Binshan
Chen, Chaoping
Powell, Michael
Anastos, Kathryn
Burger, Harold
Carter, Carol A
The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title_full The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title_fullStr The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title_full_unstemmed The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title_short The S40 residue in HIV-1 Gag p6 impacts local and distal budding determinants, revealing additional late domain activities
title_sort s40 residue in hiv-1 gag p6 impacts local and distal budding determinants, revealing additional late domain activities
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907034/
https://www.ncbi.nlm.nih.gov/pubmed/24257210
http://dx.doi.org/10.1186/1742-4690-10-143
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